Electroplating as a manufacturing capability for parts and components.
Electroplating parameters depend on the material, part geometry, required result and process limitations. Exact coating types and process conditions are agreed after the requirement is reviewed.
Send a drawing, 3D model, sample or short description. We will clarify the parameters and advise on the next steps.
Electroplating is an electrochemical process in which a thin layer of one metal is deposited on the surface of another. The coating can protect the base material, change surface properties or provide the required appearance.
The process parameters depend on the base material, part geometry, intended result and technological limitations. Exact coating options are confirmed after the technical requirement has been reviewed.
The part is placed in an electrolyte and connected as the cathode. The coating metal acts as the anode. When current is applied, metal ions move through the solution and form a layer on the prepared surface.
Layer thickness and structure are controlled through current, temperature, solution condition and processing time.
Electroplating changes the surface properties of a part while retaining the characteristics of the base material.
The suitable coating is selected after the part, material and operating requirements have been reviewed.
A commonly used protective coating for steel parts.
Used where surface protection, wear behaviour or appearance is important.
Can provide a hard surface and reduced friction for suitable applications.
Can improve conductivity or serve as an intermediate layer.
Used for selected electrical and soldering applications.
An electrochemical surface treatment for suitable aluminium alloys.
Electroplating can be used for parts and components in different industrial sectors.
Shafts, pistons, brackets, fasteners and other technical parts.
Busbars, terminals, contacts and conductive components.
Anchor bolts, brackets and facade-system fasteners.
Locks, hinges, handles and furniture fittings.
Nuts, screws, studs and other serial hardware.
The process mode is selected for the base material and required result.
A typical production route includes five controlled stages.
Cleaning, degreasing and surface preparation according to the base material.
Parts are secured on fixtures and placed in the process bath.
The calculated current is applied and the coating layer is formed.
The processed surface and layer parameters are checked.
Parts are rinsed, given the required final treatment and dried.
Send the part description, base material, drawing or photo and the expected result. The production team will review the input data and confirm the applicable process parameters.
It is a thin electrochemically deposited metal layer used to protect the base, change surface properties or provide the required finish.
The exact coating options are confirmed after the part, base material and technical requirements have been reviewed.
Potential base materials include carbon and structural steels, stainless steel, cast iron, aluminium, brass and copper. Feasibility depends on the requested process.
Suitable coatings can reduce contact between the base metal and the environment, helping to limit corrosion.
Lead time depends on quantity, part geometry, surface preparation and the selected process.
Serial processing can be considered after the part and batch parameters have been reviewed.
Inspection methods are selected according to the coating and technical requirements.
The calculation depends on surface area, preparation, layer requirements and quantity. Send the technical data for an assessment.